In this paper, we demonstrate a self-imaging technique that can visualize longitudinal interference patterns behind periodically-structured objects, which is often referred to as Talbot carpet. Talbot carpet is of great interest due to ever-decreasing scale of interference features. We demonstrate experimentally that Talbot carpets can be imaged in a single exposure configuration revealing a broad spectrum of multi-scale features. We have performed rigorous diffraction simulations for showing that Talbot carpet print can produce ever-decreasing structures down to limits set by mask feature sizes. This demonstrates that large-scale pattern masks may be used for direct printing of features with substantially smaller scales. This approach is a...
In photolithography, increasing pattern density is a key issue for development ofsemiconductor devic...
We analyze the Talbot effect produced by a mask composed of two diffraction gratings. Combinations w...
This study developed a new low-cost nanolithographic tool for creating periodic arrays of complex, n...
In this paper, we demonstrate a self-imaging technique that can visualize longitudinal interference ...
In this paper, we demonstrate a self-imaging technique that can visualize longitudinal interference ...
Self-imaging is a well-known optical phenomenon produced by diffraction of a coherent beam in a peri...
Self-imaging is a well-known optical phenomenon produced by diffraction of a coherent beam in a peri...
We introduce Talbot self-imaging into photoalignment technique to record Talbot carpet into an LC ce...
In this paper, we show some experimental results obtained by us in the summer of 2014 in IPICyT to p...
We report a method of generating atomic density gratings by standing-wave manipulation of ultracold ...
Displacement Talbot lithography (DTL) is a new technique for patterning large areas with sub-micron ...
We present an effective modeling approach for a fast calculation of the Talbot carpet from an initia...
The Talbot effect is utilized for micro-fabrication of periodic microstructures via proximity lithog...
We investigate optical properties of (2D) fractional Talbot patterns under illumination with EUV las...
We studied the use of Talbot pattern illumination in scanning optical microscopy (SOM). Unlike conve...
In photolithography, increasing pattern density is a key issue for development ofsemiconductor devic...
We analyze the Talbot effect produced by a mask composed of two diffraction gratings. Combinations w...
This study developed a new low-cost nanolithographic tool for creating periodic arrays of complex, n...
In this paper, we demonstrate a self-imaging technique that can visualize longitudinal interference ...
In this paper, we demonstrate a self-imaging technique that can visualize longitudinal interference ...
Self-imaging is a well-known optical phenomenon produced by diffraction of a coherent beam in a peri...
Self-imaging is a well-known optical phenomenon produced by diffraction of a coherent beam in a peri...
We introduce Talbot self-imaging into photoalignment technique to record Talbot carpet into an LC ce...
In this paper, we show some experimental results obtained by us in the summer of 2014 in IPICyT to p...
We report a method of generating atomic density gratings by standing-wave manipulation of ultracold ...
Displacement Talbot lithography (DTL) is a new technique for patterning large areas with sub-micron ...
We present an effective modeling approach for a fast calculation of the Talbot carpet from an initia...
The Talbot effect is utilized for micro-fabrication of periodic microstructures via proximity lithog...
We investigate optical properties of (2D) fractional Talbot patterns under illumination with EUV las...
We studied the use of Talbot pattern illumination in scanning optical microscopy (SOM). Unlike conve...
In photolithography, increasing pattern density is a key issue for development ofsemiconductor devic...
We analyze the Talbot effect produced by a mask composed of two diffraction gratings. Combinations w...
This study developed a new low-cost nanolithographic tool for creating periodic arrays of complex, n...